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    • 31. 发明申请
    • Display Device
    • 显示设备
    • US20090103037A1
    • 2009-04-23
    • US12251517
    • 2008-10-15
    • Hiroyuki AbeYoshiomi YoshiKatsumi MatsumotoHiroaki Asuma
    • Hiroyuki AbeYoshiomi YoshiKatsumi MatsumotoHiroaki Asuma
    • G02F1/1345
    • H05K3/361H05K1/117H05K3/244H05K2201/0326H05K2201/09472H05K2201/0969
    • At least one substrate includes plural pad electrodes at an end of at least one side, each of the plural pad electrodes includes a metal layer formed on the at least one substrate and a transparent conductive film formed on the metal layer, and a flexible wiring board includes a connection electrode mechanically and electrically connected to the transparent conductive film of each of the pad electrodes. Each of the pad electrodes has, on a surface on which the metal layer is formed, a metal-layer removed area in which the metal layer is not formed in a shape of a recess or an opening, the transparent conductive film covers both an area in which the metal layer is formed and the metal-layer removed area and is electrically connected to the metal layer in the area in which the metal layer is formed, and the connection electrode of the flexible wiring board is superimposed on both the metal layer and the metal-layer removed area of the pad electrode.
    • 至少一个基板在至少一侧的端部包括多个焊盘电极,所述多个焊盘电极中的每一个包括形成在所述至少一个基板上的金属层和形成在所述金属层上的透明导电膜,以及柔性布线板 包括与每个焊盘电极的透明导电膜机械地和电连接的连接电极。 每个焊盘电极在其上形成有金属层的表面上具有金属层去除区域,其中金属层未形成为凹部或开口的形状,透明导电膜覆盖两个区域 其中形成金属层和金属层去除区域并与形成金属层的区域中的金属层电连接,并且柔性布线板的连接电极重叠在金属层和 焊盘电极的金属层去除区域。
    • 33. 发明申请
    • Display Device
    • 显示设备
    • US20080129674A1
    • 2008-06-05
    • US11936116
    • 2007-11-07
    • Hiroyuki AbeSaori SugiyamaHiroaki Asuma
    • Hiroyuki AbeSaori SugiyamaHiroaki Asuma
    • G09G3/36
    • G09G3/20G02F1/136204G02F2202/22G09G3/3648G09G2300/08G09G2330/06
    • The present invention prevents electrostatic breakdown attributed to static electricity even in and after a cell cutting step. In a display device which includes a substrate, a plurality of pixels which is formed in a pixel part, a plurality of video lines which applies video voltages to the plurality of pixels, and a video voltage selection circuit which selects the video voltages to be inputted to the pixels and applies the selected video voltages to the predetermined video lines among the plurality of video lines, an electrostatic protective circuit for protecting a pixel part is connected to the plurality of video voltage inputting lines which inputs the video voltages to the video voltage selection circuit, and an electrostatic protective circuit for protecting a peripheral circuit is connected to the lines other than the video voltage inputting lines which is connected to the video voltage selection circuit. The electrostatic protective circuit for protecting the pixel part is connected between the plurality of video voltage inputting lines, and the electrostatic protective circuit for protecting the peripheral circuit is connected between the at least one video voltage inputting line and the line other than the at least one video voltage inputting line, between the plurality of lines other than the video voltage inputting lines, and between the line other than the at least one video voltage inputting line and a reference voltage line to which a reference voltage is applied.
    • 本发明即使在细胞切割步骤中和之后也能防止静电导致静电破坏。 在包括基板,形成在像素部分中的多个像素,向多个像素施加视频电压的多条视频线的显示装置和选择要输入的视频电压的视频电压选择电路 将所选择的视频电压施加到多条视频线中的预定视频行,用于保护像素部分的静电保护电路连接到多个视频电压输入线,该视频电压输入线将视频电压输入到视频电压选择 电路,并且用于保护外围电路的静电保护电路连接到除了连接到视频电压选择电路的视频电压输入线之外的线路。 用于保护像素部分的静电保护电路连接在多个视频电压输入线之间,用于保护外围电路的静电保护电路连接在至少一个视频电压输入线和除了至少一个 视频电压输入线,除了视频电压输入线之外的多条线之间,以及除了至少一个视频电压输入线之外的线与施加了参考电压的参考电压线之间。
    • 35. 发明授权
    • Thin film deposition method and thin film deposition apparatus
    • 薄膜沉积法和薄膜沉积装置
    • US07291357B2
    • 2007-11-06
    • US10330385
    • 2002-12-26
    • Atsushi HiraizumiKoji MasudaHiroyuki AbeTetsuro WadaKoichi ShintomiKazuyou Mizuno
    • Atsushi HiraizumiKoji MasudaHiroyuki AbeTetsuro WadaKoichi ShintomiKazuyou Mizuno
    • B05D5/06
    • C23C14/547C23C14/505C23C14/548
    • A thin film deposition method for producing an optical film with an optical characteristic on a deposition substrate in a vacuum chamber is provided. The method may include preparing in the vacuum chamber a deposition source which is a source of the film producing material; holding the deposition substrate with a substrate holding member; arranging the deposition substrate and the deposition source such that, given that a vertical distance from the center of the deposition substrate to the deposition source is defined as ZK and a horizontal distance between the deposition substrate and the deposition source as Xk, Xk/Zk is set to satisfy a following equation 0.48≦Xk/Zk≦0.78; rotating the deposition substrate on a rotational axis which is orthogonal to the deposition substrate; and evaporating the film producing material of the deposition source to perform deposition on the deposition substrate.
    • 提供了一种用于在真空室中在沉积基板上制造具有光学特性的光学膜的薄膜沉积方法。 该方法可以包括在真空室中制备作为成膜材料源的沉积源; 用衬底保持构件保持沉积衬底; 布置沉积基板和沉积源,使得考虑到从沉积基板的中心到沉积源的垂直距离被定义为ZK,并且沉积基板和沉积源之间的水平距离为Xk,Xk / Zk为 设定为满足以下等式0.48 <= Xk / Zk <= 0.78; 使沉积衬底旋转在与沉积衬底正交的旋转轴上; 蒸发沉积源的薄膜生成材料,以在沉积基板上进行沉积。
    • 38. 发明申请
    • Temperature-sensing device
    • 温度感应装置
    • US20070018778A1
    • 2007-01-25
    • US11491114
    • 2006-07-24
    • Hiroyuki Abe
    • Hiroyuki Abe
    • H01C7/13
    • H01C1/028G01K1/10G01K7/22H01C7/008H01C17/02
    • A temperature-sensing device includes an element with a resistance value varying with a temperature change, a lead extending on the axis of the element, and a resin coat surrounding the element, wherein a number of hydrophobic inorganic fillers with an average particle size of 5 μm or less exist on a surface of the resin coat. The temperature sensor may have a sealing electrode electrically connected to each end of the element, the lead being electrically connected to each of the sealing electrodes and extending on the axis direction of a composite body formed of the element and the sealing electrode, and an inorganic insulating member surrounding the element and covering at least part of the sealing electrodes, the resin coat covering at least a connecting portion between the electrode and the lead wire.
    • 温度检测装置包括具有随温度变化而变化的电阻值的元件,在该元件的轴线上延伸的引线和围绕该元件的树脂涂层,其中平均粒径为5的疏水性无机填料 在树脂涂层的表面上存在较少的母体。 温度传感器可以具有与元件的每个端部电连接的密封电极,引线电连接到每个密封电极并沿由元件和密封电极形成的复合体的轴线方向延伸, 所述绝缘构件围绕所述元件并且覆盖所述密封电极的至少一部分,所述树脂涂层至少覆盖所述电极和所述引线之间的连接部分。
    • 40. 发明授权
    • Semiconductor integrated circuit having controllable internal supply voltage
    • 具有可控内部电源电压的半导体集成电路
    • US07071768B2
    • 2006-07-04
    • US10628580
    • 2003-07-29
    • Hiroyuki AbeYutaka TakasukaHisao IseHiroko TakanoSachie Takahashi
    • Hiroyuki AbeYutaka TakasukaHisao IseHiroko TakanoSachie Takahashi
    • G05F1/10G05F3/02
    • G11C5/147
    • In an integrated circuit having an internal supply voltage generation circuit which generates an internal supply voltage by descending an external supply voltage, there is provided an internal circuit which operates with a supplied internal supply voltage. The internal supply voltage generation circuit changes an internal supply voltage level to be generated in accordance with an operation speed of the internal circuit. Preferably the semiconductor integrated circuit includes a clock control circuit which generates an internal clock signal the frequency of which is controlled in accordance with the operation speed of the internal circuit. When the internal clock signal is controlled to have a higher frequency, the internal supply voltage is controlled to be higher. Also, when the internal clock signal is controlled to have a lower frequency, the internal supply voltage is controlled to be lower.
    • 在具有通过降低外部电源电压而产生内部电源电压的内部电源电压产生电路的集成电路中,提供了以所提供的内部电源电压工作的内部电路。 内部电源电压产生电路根据内部电路的运行速度改变要产生的内部电源电压。 优选地,半导体集成电路包括时钟控制电路,其生成内部时钟信号,其频率根据内部电路的操作速度被控制。 内部时钟信号被控制为具有较高的频率时,内部电源电压被控制得更高。 此外,当内部时钟信号被控制为具有较低的频率时,内部电源电压被控制为较低。